PDF-A muon, however, is not made up of any other particles. It is not a
Author : lindy-dunigan | Published Date : 2016-06-29
There146s a good reason why the muon is such an unfamiliar particle muons are radioactive and they decay with a halflife of 152 muon electron electron antineutrino
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A muon, however, is not made up of any other particles. It is not a: Transcript
There146s a good reason why the muon is such an unfamiliar particle muons are radioactive and they decay with a halflife of 152 muon electron electron antineutrino muon neutrino. Upgrade Status. P. Campana, . Muon Upgrade . Meeting, . September 3rd, . 2010. . Progress of the work on Muon Upgrade. . Preparation of LOI-Muon. 1. 2. Some work done since our last meeting:. ODE electronics (Caterina et al. – see separate talk). Hyperons. Classification of the Elementary Particles. Elementary particles are classified into groups according to their mass and spin properties. These are, referring to their masses: . (1) the photon with zero rest mass and spin 1. It is a massless boson. . Atoms in magnetic field. orbiting electron behaves like current loop . . magnetic moment . μ. = current x area . interaction energy = . μ. ·B. (both vectors!) = . μ. ·B. . loop current = -. Nick Barlow. (University of Cambridge). on behalf of the ATLAS collaboration. Contents. Motivation . for searching for long-lived particles.. Very. quick look at a couple of . signal models. .. The ATLAS detector and the 2011 dataset.. 1997: Colin Johnson argued that the next step after the ACOL antiproton production target should be a mercury jet target. . [U. Miss. Workshop, Jan 1997; my introduction to Muon Collider . Targetry. Context: Muon Collider and Neutrino Factory. 1997. : Colin . Johnson argued . that the next step after the ACOL antiproton production target should be a mercury jet target. . [U. Miss. Workshop, Jan 1997; my introduction to Muon Collider . Upgrade Status. P. Campana, . Muon Upgrade . Meeting, . September 3rd, . 2010. . Progress of the work on Muon Upgrade. . Preparation of LOI-Muon. 1. 2. Some work done since our last meeting:. ODE electronics (Caterina et al. – see separate talk). S. Tarem, S. . Bressler. , S. . Vallecorsa. , E. . Kajomovitz. , S. . Trboush. A. . Soffer. , . Nimrod. What is RPVLL?. We work within the RPVLL subgroup of SUSY. It includes everything that does not rely on MET. Context: Muon Collider and Neutrino Factory. 1997. : Colin . Johnson argued . that the next step after the ACOL antiproton production target should be a mercury jet target. . [U. Miss. Workshop, Jan 1997; my introduction to Muon Collider . Cioli Barazandeh, Angel . Gutarra-leon. and Walerian Majewski. Mentor: . Walerian. . Majewski. , Department of Physics . Northern Virginia Community College, Annandale, VA . Experiments. Hello, and welcome to my Presentation!. How did . the universe come to be the way that it . is?. Democritus (~2500 years ago). Recall the four fundamental forces:. GRAVITY: . All particles are influenced.. Relative strength: . WEAK: . All particles are influenced.. Outline. Class 1 Atlas Control Room Shifts. Booking. Present Status + Experience+ Feedback. Class . 2 reminder. A. . Polini. & Z. Yan. May 21. th. 2012. Class 1 Control Room . Muon. Shifts. Following Steering and IB discussions in November:. . . ILC and More Workshop. Lake Como, Italy. . May 16-17, 2013. Why . Muons. ?. What’s so special about . Muons. ?. Muons. are . Heavy. LHC, MAP, and LEMC. David . Neuffer. July 2018. 2. Outline. Next Heavy Lepton Collider . up to ~14 . TeV. in LHC tunnel. Needs muon source. PS or new MW proton . Linac. /storage ring. cooling …. or LEMC??.
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